在基因学上相距较远的 sake 酵母的优异发酵性能背后的机制中的异质性
Kotaro Mori1, Taisuke Seike2, Takeshi Akao3
1General Research Laboratory, Kiku-Masamune Sake Brewing Co. Ltd., 1-8-6 Uozaki-nishimachi, Higashinada-ku, Kobe, Hyogo 658-0026, Japan; Department of Bioinformatic Engineering, Graduate School of Information Science and Technology, Osaka University, 1-5 Yamadaoka, Suita, Osaka 565-0871, Japan.
传统的酵母Km67表现出由于Rim15p信号受损而增强的发酵,与现代菌株不同. 这项研究揭示了酵母发酵机制的位点异质性.
科学领域:
- 微生物学
- 酵母遗传学
- 发酵科学
背景情况:
- 萨克酵母 (Saccharomyces cerevisiae) 的发酵能力非常强大.
- 现代酵母K701的功效是众所周知的,但古典品种的功效还没有得到充分研究.
- 传统的酵母Km67的优异发酵机制需要研究.
研究的目的:
- 阐明古典酵母中优质发酵的遗传和生理基础.
- 将Km67与实验室菌株X2180和K701进行比较.
- 确定糖酵母发酵的调节机制.
主要方法:
- 对遗传和生理性质进行比较分析.
- 酵母转录基因组的RNA测序
- 信号通路的基因检测,包括Rim15p和蛋白酸酶2A (PP2AB55δ).
主要成果:
- Km67在糖果中没有进入静止状态,与发酵率较高相关.
- 在Km67中通过Rim15p信号观察到受损的发酵抑制.
- CDC55的删除 (Rim15p的下游) 降低了发酵,但低于其他菌株,表明其他因素.
结论:
- Km67的高发酵与Rim15p介导的抑制受损和改变的PP2AB55δ活动有关.
- 未确定的因素可能会独立于Km67中的PP2AB55δ或Rim15p调节发酵.
- 像Km67和K701这样的基因相距较远的酵母之间的发酵机制存在显著的位点异质性.
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